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首页> 外文期刊>Eukaryotic cell >Isolation of Mutations in the Catalytic Domain of the Snf1 Kinase That Render Its Activity Independent of the Snf4 Subunit
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Isolation of Mutations in the Catalytic Domain of the Snf1 Kinase That Render Its Activity Independent of the Snf4 Subunit

机译:Snf1激酶催化域中突变的分离,该突变使其活性独立于Snf4亚基

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Activation of the Snf1 kinase requires at least two events, phosphorylation of the activation loop on threonine 210 and an Snf4-dependent process that is not completely defined. Snf4 directly interacts with a region of the regulatory domain of Snf1 that may otherwise act as an autoinhibitory domain. In order to gain insight into the regulation of Snf1 kinase by Snf4, deletions in the regulatory domain of the catalytic subunit were engineered and tested for their effect on Snf1 function in the absence of Snf4. Deletion of residues 381 to 488 from the Snf1 protein resulted in a kinase that was activated by glucose limitation even in the absence of the Snf4 protein. A larger deletion (amino acids 381 to 608) encompassing virtually the entire regulatory domain resulted in complete inactivation of the Snf1 kinase even in the presence of Snf4. A genetic screen for amino acid substitutions that conferred an Snf4-independent phenotype identified four point mutations in the Snf1 catalytic domain. One very conservative mutation, leucine 183 to isoleucine, conferred nearly wild-type levels of Snf1 kinase function in the absence of the Snf4 protein. Purified Snf1 kinase was inactive when isolated from snf4Δ cells, whereas the Snf1-L183I kinase exhibited significant activity in the absence of Snf4. Our data support the idea that Snf1 kinase activity is constrained in cis by an autoinhibitory domain and that the Snf4-mediated activation of Snf1 can be bypassed by subtle conformational changes in the catalytic domain of the Snf1 kinase.
机译:Snf1激酶的激活至少需要两个事件,苏氨酸210上的激活环磷酸化和一个Snf4依赖性过程(尚未完全定义)。 Snf4与Snf1调节域的区域直接相互作用,否则该区域可能充当自抑制域。为了深入了解Snf4对Snf1激酶的调控,对催化亚基调控域中的缺失进行了工程设计,并测试了它们在不存在Snf4的情况下对Snf1功能的影响。从Snf1蛋白中删除381至488位残基会导致一种激酶,即使不存在Snf4蛋白,其也会受到葡萄糖限制而被激活。几乎涵盖整个调节域的较大缺失(氨基酸381至608)导致Snf1激酶完全失活,即使在Snf4存在的情况下也是如此。赋予Snf4独立表型的氨基酸取代的遗传筛选确定了Snf1催化域中的四个点突变。一种非常保守的突变,亮氨酸183变为异亮氨酸,在没有Snf4蛋白的情况下赋予了接近野生型的Snf1激酶功能。从 snf4 Δ细胞中分离后,纯化的Snf1激酶失活,而在不存在Snf4的情况下,Snf1-L183I激酶表现出显着的活性。我们的数据支持这样的想法:Snf1激酶的活性受自动抑制域限制在 cis 中,并且Snf4介导的Snf1激活可被Snf1激酶催化域中的微妙构象变化所绕过。

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